Isolation by preparative free-flow electrophoresis and aqueous two-phase partition from rat adipocytes of an insulin-responsive small vesicle fraction with glucose transport activity
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概要
- 論文の詳細を見る
- 1996-05-17
著者
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Garvey Timothy
Department Of Medicine Medical University Of South Carolina And The Charleston Veterans Affairs Medi
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MORRE Dorothy
Department of Foods and Nutrition, Purdue University
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SAMMONS David
Department of Veterinary Science, University of Arizona
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YIM Jonathan
Department of Medicinal Chemistry and Pharmacognosy, Purdue University
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BRUNO Maria
Department of Foods and Nutrition, Purdue University
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SNYDER Timothy
Department of Foods and Nutrition, Purdue University
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REUST Timothy
Department of Foods and Nutrition, Purdue University
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MAIANU Lidia
Department of Medicine, Medical University of South Carolina and the Charleston Veterans Affairs Med
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MORRE James
Department of Medicinal Chemistry and Pharmacognosy, Purdue University
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Morre James
Department Of Medicinal Chemistry And Pharmacognosy Purdue University
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Bruno Maria
Department Of Foods And Nutrition Purdue University
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Maianu Lidia
Department Of Medicine Medical University Of South Carolina And The Charleston Veterans Affairs Medi
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Yim Jonathan
Department Of Medicinal Chemistry And Pharmacognosy Purdue University
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Morre Dorothy
Department Of Foods And Nutrition Purdue University
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Sammons David
Department Of Veterinary Science University Of Arizona
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Reust Timothy
Department Of Foods And Nutrition Purdue University
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Snyder Timothy
Department Of Foods And Nutrition Purdue University
関連論文
- Separation of endosomes by aqueous two-phase partition and free-flow electrophoresis
- Effect of centrifugation on separation by aqueous two-phase partition of an early and late endosome model using inside-out plasma membrane vesicles from plants
- Isolation by preparative free-flow electrophoresis and aqueous two-phase partition from rat adipocytes of an insulin-responsive small vesicle fraction with glucose transport activity
- Aqueous two-phase partition and detergent precipitation of a drug-responsive NADH oxidase from the HeLa cell surface